Abstract
Transposable recombinational switches may play important roles in the evolution of bacterial populations by increasing flexibility in the control of expression of particular genes and thereby maintaining heterogeneity in clones of cells growing in a uniform environment. Experiments reported here show that Tn5-112, a deletion derivative of kanamycin-resistance transposon Tn5, can function as such a mobile recombinational switch. The internal deletion in Tn5-112 removes transcription termination signals and permits transcription initiated within the element to continue into nearby bacterial genes. Consequently, in one orientation Tn5-112 stimulates distal gene expression, whereas in the other orientation the normal polarity imposed by wild-type Tn5 intervenes and distal gene expression is not stimulated. Because Tn5-112 contains terminal inverted repeats, intramolecular recombination can invert the Tn5-112 element and alter gene expression. Tn5-112 is transposition deficient. Its mobility derives from the recessive nature of the transposition deficiency and, in this study, from the possibility of homologous recombination which permits its placement in either orientation at any site occupied by nother Tn5 element.
MeSH Terms
Chromosome Inversion
DNA Transposable Elements
Escherichia coli
Gene Expression Regulation
Genetic Linkage
Genotype
Lac Operon
Operon
Phenotype
Recombination, Genetic
Chemicals
DNA Transposable Elements
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Berg D E
References (17)
17 references, click to expand
-
The length of the homologous pairing region for genetic recombination in bacteriophage T4.
Proc Natl Acad Sci U S A. 1967 Sep;58(3):962-6
PMID: 5233853
-
Two states of expression of genes cl, rex, and N in lambda.
Virology. 1971 Jan;43(1):16-33
PMID: 5543270
-
Electron microscope study of the structures of lambdadv DNAs.
J Mol Biol. 1974 Jun 15;86(1):69-89
PMID: 4604419
-
IS2, a genetic element for turn-off and turn-on of gene activity in E. coli.
Mol Gen Genet. 1974;132(4):265-89
PMID: 4610339
-
Phage lambda receptor chromosomes for DNA fragments made with restriction endonuclease III of Haemophilus influenzae and restriction endonuclease I of Escherichia coli.
J Mol Biol. 1975 Nov 5;98(3):551-64
PMID: 1104875
-
IS-elements in microorganisms.
Curr Top Microbiol Immunol. 1976;75:111-52
PMID: 797531
-
Inversion of the G DNA segment of phage Mu controls phage infectivity.
Nature. 1978 Feb 9;271(5645):577-80
PMID: 622196
-
DNA sequence at the integration sites of the insertion element IS1.
Cell. 1978 Mar;13(3):411-8
PMID: 350411
-
Flagellar-phase variation: isolation of the rh1 gene.
J Bacteriol. 1979 Jan;137(1):517-23
PMID: 762022
-
Phase variation in Salmonella: genetic analysis of a recombinational switch.
Proc Natl Acad Sci U S A. 1979 Jan;76(1):391-5
PMID: 370828
-
Transposition of DNA inserted into deletions of the Tn5 kanamycin resistance element.
Mol Gen Genet. 1979 Mar 9;171(1):7-13
PMID: 375023
-
How the lambda repressor and cro work.
Cell. 1980 Jan;19(1):1-11
PMID: 6444544
-
A restriction enzyme cleavage map of Tn5 and location of a region encoding neomycin resistance.
Mol Gen Genet. 1979;177(1):65-72
PMID: 231729
-
Polarity of Tn5 insertion mutations in Escherichia coli.
J Bacteriol. 1980 May;142(2):439-46
PMID: 6247321
-
Invertible DNA determines host specificity of bacteriophage mu.
Nature. 1980 Jul 17;286(5770):218-22
PMID: 6250048
-
Chromosome organization and genic expression.
Cold Spring Harb Symp Quant Biol. 1951;16:13-47
PMID: 14942727
-
Controlling elements and the gene.
Cold Spring Harb Symp Quant Biol. 1956;21:197-216
PMID: 13433592